
Allicdata Part #: | DSC6331JI2LA-026.0000TTR-ND |
Manufacturer Part#: |
DSC6331JI2LA-026.0000T |
Price: | $ 0.69 |
Product Category: | Crystals, Oscillators, Resonators |
Manufacturer: | Microchip Technology |
Short Description: | SPREAD SPECTRUM MEMS OSCILLATOR |
More Detail: | 26MHz MEMS (Silicon) LVCMOS Oscillator 1.71 V ~ 3.... |
DataSheet: | ![]() |
Quantity: | 1000 |
1000 +: | $ 0.62943 |
Specifications
Frequency Stability: | ±25ppm |
Current - Supply (Disable) (Max): | 80µA (Typ) |
Height - Seated (Max): | 0.035" (0.89mm) |
Size / Dimension: | 0.098" L x 0.079" W (2.50mm x 2.00mm) |
Package / Case: | 4-SMD, No Lead |
Mounting Type: | Surface Mount |
Ratings: | -- |
Current - Supply (Max): | 3mA (Typ) |
Operating Temperature: | -40°C ~ 85°C |
Series: | DSC63XX |
Voltage - Supply: | 1.71 V ~ 3.63 V |
Output: | LVCMOS |
Function: | Standby (Power Down) |
Frequency: | 26MHz |
Type: | MEMS (Silicon) |
Part Status: | Active |
Packaging: | Tape & Reel (TR) |
Description
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.Oscillators
DSC6331JI2LA-026.0000T is a type of oscillator that uses the latest oscillator technology to convert a train of input pulses into carefully regulated frequencies. Generally, this type of oscillator is commonly used in applications requiring very precise frequencies. It is used for communication, computing, measurement and control equipment, broadband systems, and harmonic distortion measurers, among other fields.
These oscillators are typically made up of two stages. The first stage converts the train of pulses to a low frequency signal suitable for the second stage, which provides regulation. The two stages are connected by a phase-locked loop (PLL). This combination allows the oscillator to generate precise frequencies while remaining stable over a variable input frequency range. The PLL acts to keep the oscillator in phase with the input signal by making adjustments to the frequency and phase of the output signal as needed.
DSC6331JI2LA-026.0000T oscillators offer a variety of features, such as a wide operating frequency range, high stability, low phase noise, and low power consumption. These features make DSC6331JI2LA-026.0000T oscillators well suited for use in applications requiring precise frequency control but also low power consumption. Examples include wireless communications, navigation equipment, base stations, microwave communications, test equipment, instrumentation, and radio frequency identification (RFID) applications.
How DSC6331JI2LA-026.0000T oscillators work is quite simple. First, an external crystal or reference frequency is applied to the device and the two stages of the oscillator are connected by a PLL. The PLL measures the phase difference between the input frequency and the output frequency and adjusts the oscillator accordingly. This adjustment of the output frequency keeps it in phase with the input, allowing it to accurately output a precise frequency.
In addition to its wide operating frequency range, DSC6331JI2LA-026.0000T oscillators also offer excellent stability over temperature, power supply, and time characteristics. To ensure accurate and precise frequency control, these oscillators are designed to achieve an accuracy of ± 0.03 ppm when operated from –40°C to +85°C. Furthermore, the oscillators are housed in a standard 5x7 mm, 14-pin SMD package.
In summary, DSC6331JI2LA-026.0000T oscillators are ideal for applications requiring precise frequency control and low power consumption. With their wide operating frequency range, high stability, low phase noise, and low power consumption, these oscillators are suitable for use in wireless communications, navigation equipment, base stations, microwave communications, test equipment, instrumentation, and RFID applications.
DSC6331JI2LA-026.0000T is a type of oscillator that uses the latest oscillator technology to convert a train of input pulses into carefully regulated frequencies. Generally, this type of oscillator is commonly used in applications requiring very precise frequencies. It is used for communication, computing, measurement and control equipment, broadband systems, and harmonic distortion measurers, among other fields.
These oscillators are typically made up of two stages. The first stage converts the train of pulses to a low frequency signal suitable for the second stage, which provides regulation. The two stages are connected by a phase-locked loop (PLL). This combination allows the oscillator to generate precise frequencies while remaining stable over a variable input frequency range. The PLL acts to keep the oscillator in phase with the input signal by making adjustments to the frequency and phase of the output signal as needed.
DSC6331JI2LA-026.0000T oscillators offer a variety of features, such as a wide operating frequency range, high stability, low phase noise, and low power consumption. These features make DSC6331JI2LA-026.0000T oscillators well suited for use in applications requiring precise frequency control but also low power consumption. Examples include wireless communications, navigation equipment, base stations, microwave communications, test equipment, instrumentation, and radio frequency identification (RFID) applications.
How DSC6331JI2LA-026.0000T oscillators work is quite simple. First, an external crystal or reference frequency is applied to the device and the two stages of the oscillator are connected by a PLL. The PLL measures the phase difference between the input frequency and the output frequency and adjusts the oscillator accordingly. This adjustment of the output frequency keeps it in phase with the input, allowing it to accurately output a precise frequency.
In addition to its wide operating frequency range, DSC6331JI2LA-026.0000T oscillators also offer excellent stability over temperature, power supply, and time characteristics. To ensure accurate and precise frequency control, these oscillators are designed to achieve an accuracy of ± 0.03 ppm when operated from –40°C to +85°C. Furthermore, the oscillators are housed in a standard 5x7 mm, 14-pin SMD package.
In summary, DSC6331JI2LA-026.0000T oscillators are ideal for applications requiring precise frequency control and low power consumption. With their wide operating frequency range, high stability, low phase noise, and low power consumption, these oscillators are suitable for use in wireless communications, navigation equipment, base stations, microwave communications, test equipment, instrumentation, and RFID applications.
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